4.6 Article

Multiphoton Absorption and Two-Photon-Pumped Random Lasing in Crystallites of a Coordination Polymer

期刊

JOURNAL OF PHYSICAL CHEMISTRY C
卷 122, 期 1, 页码 777-781

出版社

AMER CHEMICAL SOC
DOI: 10.1021/acs.jpcc.7b10789

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资金

  1. Ministry of Education, Singapore through NUS FRC Grant [R-143-000-678-112, R144-000-327-112]
  2. National Research Foundation through NRF-CRP Grant [10-2012-03]
  3. Shenzhen University
  4. National University of Singapore

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Functional materials with multiple optical properties have been investigated extensively in recent years because of their potential applications. Here we demonstrate a ladder polymer, [Zn-2(benzoate)(4)(An2Py)(2)] for its efficient light frequency up-conversion via multiphoton excitation at wavelengths ranging from 800 to 1500 nm. The zinc-based coordination polymer can-be self assembled, from zinc(II) nitrate, trans,trans-9,10-bis(4-pyridylethenyl) anthracene (An2Py), and benzoate ligands furnishing a one-dimensional ladder structure. The coordination polymer exhibits a high photoluminescence (PL) quantum yield of 70%, a two photon-absorption cross section of 890 GM at 800 nm, and a three-photon-absorption cross section of 3.1 x 10(-78) cm(6) s(2) photon(-2) at 1200 nm. Furthermore, the coordination polymer in the form of nanoscale crystallites is capable of random lasing when pumped by 800 nm laser pulses with a threshold of 1.5 mJ/cm(2).

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